Sensor box and air conditioner cabinet with same

By using a sensor box consisting of a box body and a cover in the air conditioner unit, and fixing the sensor with clamping holes, the problem of high sensor fixing cost is solved, and the reliability and cost-effectiveness are improved.

CN116538565BActive Publication Date: 2025-11-04NINGBO AUX ELECTRIC CO LTD +1
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Patent Information

Application Number
CN202210092894.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-01-26
Publication Date
2025-11-04
Estimated Expiration
2042-01-26

AI Technical Summary

Technical Problem

The current method of fixing sensors in air conditioning cabinet units is costly.

Method used

A sensor box consisting of a body and a cover is used. The sensor's detection probe is fixed by a clamping hole formed by the mating of the body and the cover, which reduces the number of fixed parts and assembly steps, and lowers the mold cost.

Benefits of technology

This achieves reliable sensor fixation, simplifies the assembly process, reduces costs, improves assembly efficiency, reduces shaking and impact damage, enhances structural strength, and improves the segmented airflow effect.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The application provides a sensor box and an air conditioner cabinet machine with the same, and relates to the technical field of air conditioners. The sensor box is designed to solve the problem of high cost of the existing air conditioner cabinet machine for fixing the sensor. The sensor box comprises a box body and a box cover. The box body and the box cover are connected to form a containing cavity. The sensor is arranged in the containing cavity. One side of the box body facing the box cover is provided with a first half hole. One side of the box cover facing the box body is provided with a second half hole. The second half hole is opposite to the first half hole to form a clamping hole. The clamping hole is configured to fix the detection probe of the sensor. The air conditioner cabinet machine comprises the above sensor box. The application can reduce the number of parts for fixing the sensor, thereby reducing the cost of fixing the sensor.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of air conditioners, in particular to a sensor box and an air conditioner cabinet with the same. BACKGROUND

[0002] In order to better improve the user experience, the existing air conditioner cabinet usually sets a sensor. However, the existing fixing method of the sensor has high cost. SUMMARY

[0003] The first object of the present application is to provide a sensor box to solve the technical problem of high cost of the existing air conditioner cabinet fixing the sensor.

[0004] The sensor box provided by the present application is used for fixing a sensor, and comprises a box body and a box cover. The box body and the box cover are connected to form a containing cavity. The sensor is arranged in the containing cavity. One side of the box body facing the box cover is provided with a first half hole. One side of the box cover facing the box body is provided with a second half hole opposite to the first half hole, so as to form a clamping hole configured to fix a detection probe of the sensor.

[0005] The sensor box mainly comprises a box body and a box cover. When in use, the sensor is arranged in the containing cavity formed by the connection of the box body and the box cover. The detection probe of the sensor is fixed in the clamping hole formed by the first half hole and the second half hole opposite to each other. The first half hole is arranged on one side of the box body facing the containing cavity, and the second half hole is arranged on one side of the box cover facing the containing cavity. That is, the structure for fixing the sensor is divided into two parts, one part is arranged on the box body, and the other part is arranged on the box cover.

[0006] The sensor box can effectively fix the sensor to ensure the reliability of the sensor in operation. Since the two parts for fixing the sensor are formed on the box body and the box cover respectively, the fixing of the sensor is completed after the connection of the box body and the box cover. Therefore, a separate fixing bracket for the sensor is not needed, the number of parts for fixing the sensor is reduced, the assembly process is simplified, the assembly efficiency is improved, the mold cost is saved, and the manufacturing cost of the sensor box is reduced.

[0007] In addition, the sensor box can be positioned by the first half hole or the second half hole during the installation of the sensor. The installation operation is simple, and the difficulty of the installation operation is greatly reduced.

[0008] Further, the first half hole and the second half hole are matched with the detection probe. In this way, the shaking of the detection probe in the clamping hole can be effectively avoided.

[0009] Further, the number of the first half holes and the number of the second half holes are both multiple, multiple first half holes are respectively opposite to multiple second half holes, multiple clamping holes are formed, the number of the clamping holes is the same as the number of the detection probes, and multiple clamping holes are used to one-to-one fix multiple detection probes. In this way, the separate fixing of each detection probe can be realized, and the mutual interference of each detection probe can be reduced.

[0010] Further, along the light emission direction of the detection probe, the first half hole extends a first set length, and the second half hole extends a second set length. This setting can increase the matching length of the first half hole and the second half hole with the detection probe, thereby ensuring the stability of the fixing of the detection probe.

[0011] Further, one side of the box body facing the box cover is provided with a first support, and the first half hole is opened in the first support; and / or one side of the box cover facing the box body is provided with a second support, and the second half hole is opened in the second support. In this way, the processing difficulty of the first half hole and the second half hole can be reduced.

[0012] Further, the first support includes a first support plate and a first rib plate, the first half hole is opened in the first support plate, the first rib plate is fixedly connected to the first support plate, and the first rib plate extends the first set length along the light emission direction of the detection probe, and the first support plate and the first rib plate are both used to support the detection probe; and / or the second support includes a second support plate and a second rib plate, the second half hole is opened in the second support plate, the second rib plate is fixedly connected to the second support plate, and the second rib plate extends the second set length along the light emission direction of the detection probe, and the second support plate and the second rib plate are both used to support the detection probe. In this way, the material use of the first support and the second support can be reduced, and the weight of the sensor box can be reduced.

[0013] Further, the first support further comprises two first side baffles, both of which are fixedly connected to the first support plate and are arranged on the two sides of the first muscle plate, and both of which extend along the light emission direction of the detection probe by the first set length; and / or, the second support further comprises two second side baffles, both of which are fixedly connected to the second support plate and are arranged on the two sides of the second muscle plate, and both of which extend along the light emission direction of the detection probe by the second set length. In this way, the structural strength of the first support and the second support can be enhanced.

[0014] Further, the box body and the box cover are detachably fixedly connected, and the butt joint parts of the two are matched through an installation gap, the installation gap is a, 0.05mm≤a≤0.15mm. In this way, the connection of the box body and the box cover after butt joint can be facilitated.

[0015] The second object of the present application is to provide an air conditioner cabinet to solve the technical problem of high cost of the existing air conditioner cabinet.

[0016] The air conditioner cabinet provided by the present application comprises an air outlet frame, a sensor and the above-mentioned sensor box, the sensor box is installed on the air outlet frame, the sensor is arranged in the accommodating cavity formed by the sensor box, and the detection probe of the sensor is fixed in the clamping hole of the accommodating cavity.

[0017] By arranging the above-mentioned sensor box in the air conditioner cabinet, the air conditioner cabinet has all the advantages of the above-mentioned sensor box, which will not be described here.

[0018] Further, the air conditioner cabinet is a segmented air outlet air conditioner cabinet, which comprises a plurality of segments of air sweeping blades arranged at intervals along the height direction, and the sensor box is arranged between any two adjacent segments of the air sweeping blades. Through this arrangement, the segmented air outlet effect of the air conditioner cabinet can be improved, and the user's experience can be improved. BRIEF DESCRIPTION OF DRAWINGS

[0019] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings in the following description are only embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor on the basis of the provided drawings.

[0020] Figure 1 The partial structure exploded view of the air conditioner cabinet provided by the present application is shown in the figure.

[0021] Figure 2An installation schematic diagram of the sensor box provided by the embodiment of the present application on the air outlet frame is shown in the figure;

[0022] Figure 3 A structure exploded view of the sensor box provided by the embodiment of the present application when the sensor is arranged is shown in the figure;

[0023] Figure 4 Another structure exploded view of the sensor box provided by the embodiment of the present application when the sensor is arranged is shown in the figure;

[0024] Figure 5 A structure schematic diagram of the box body of the sensor box provided by the embodiment of the present application is shown in the figure;

[0025] Figure 6 A structure schematic diagram of the box cover of the sensor box provided by the embodiment of the present application is shown in the figure; Figure 5 A partial structure enlarged view of A in the figure is shown in the figure;

[0026] Figure 7 A partial structure enlarged view of B in the figure is shown in the figure.

[0027] Figure 8 A structure schematic diagram of the box cover of the sensor box provided by the embodiment of the present application is shown in the figure; Figure 7 A partial structure enlarged view of B in the figure is shown in the figure.

[0028] Explanation of reference signs:

[0029] 010 - sensor box; 020 - air outlet frame; 030 - rear panel assembly; 040 - front panel assembly; 050 - air sweeping blade;

[0030] 100 - box body; 200 - box cover; 300 - sensor; 400 - cavity wall;

[0031] 110 - first support; 120 - first half hole; 111 - first support plate; 112 - first rib plate; 113 - first side baffle; 130 - fixing hole; 140 - clamping block;

[0032] 210 - second support; 220 - second half hole; 211 - second support plate; 212 - second rib plate; 213 - second side baffle; 230 - second insertion slot; 240 - connecting hole; 250 - clamping hole;

[0033] 310 - detection probe; 320 - circuit board. DETAILED DESCRIPTION

[0034] In order to make the above-mentioned objects, features and advantages of the present application more obvious and easy to understand, the specific embodiments of the present application will be described in detail below with reference to the drawings. It should be understood that the specific embodiments described herein are only used to explain the present application and do not limit the present application.

[0035] Figure 1 A partial structure exploded view of the air conditioner cabinet provided by the embodiment is shown in the figure,Figure 2 The installation schematic diagram of the sensor box 010 provided in the embodiment on the air outlet frame 020 is shown in FIG. 1. As shown in FIG. 1, the air conditioner cabinet machine provided in the embodiment includes the air outlet frame 020, the sensor box 010 and the sensor 300 (which is arranged inside the sensor box 010 and thus is not shown in the figure), wherein the sensor box 010 is mounted on the air outlet frame 020, the sensor 300 is arranged in the accommodating cavity formed by the sensor box 010, and the detection probe 310 of the sensor 300 is fixed in the clamping hole of the accommodating cavity. Figure 1 Figure 2

[0036] It should be noted that, in order to better achieve the purpose of air supply for users, the existing air conditioner cabinet machine is usually provided with a sensor to detect the position of the user. That is, the sensor 300 in the embodiment can be a sensor for detecting the position of the user, and how to achieve the detection of the position of the user is the prior art known to those skilled in the art, and the embodiment does not improve it, so it will not be described in detail.

[0037] Please continue to refer to Figure 1 Figure 2 In the embodiment, the air conditioner cabinet machine is a sectional air outlet air conditioner cabinet machine, specifically, the air conditioner cabinet machine includes a plurality of sections of sweeping blades 050 arranged at intervals along the height direction thereof, and the sensor box 010 is arranged between any two adjacent sections of sweeping blades 050. Each sensor box 010 is provided with the sensor 300.

[0038] In the embodiment, the air conditioner cabinet machine includes three sections of sweeping blades 050 arranged at intervals along the height direction thereof, which are an upper section of blades, a middle section of blades and a lower section of blades. The sensor box 010 is arranged between the upper section of blades and the middle section of blades, and the sensor box 010 is also arranged between the middle section of blades and the lower section of blades. Through the arrangement, the sectional air outlet effect of the air conditioner cabinet machine can be improved, and the user experience can be improved.

[0039] Please continue to refer to Figure 1 In the embodiment, the air conditioner cabinet machine further includes a front panel assembly 040 and a rear panel assembly 030, wherein the air outlet frame 020 is fixedly mounted on the front panel assembly 040, and the front panel assembly 040 cooperates with the rear panel assembly 030.

[0040] It should be noted that, in the embodiment, the specific structure of the front panel assembly 040 and the rear panel assembly 030 and the connection relationship with the corresponding components are the prior art known to those skilled in the art, and the embodiment does not improve them, so they will not be described in detail.

[0041] ​​​By setting the sensor box 010 in the air conditioner cabinet, the installation and fixation of the sensor 300 can be realized, the number of parts for fixing the sensor 300 can be effectively reduced, and the cost is low. In the following text, the specific structure of the sensor box 010 will be described.

[0042] Figure 3 The structure exploded view of the sensor box 010 provided in the embodiment is set with the sensor 300, Figure 4 Another structure exploded view of the sensor box 010 provided in the embodiment is set with the sensor 300, Figure 5 The structure schematic diagram of the box body 100 of the sensor box 010 provided in the embodiment. As Figures 3 to 5 shown, the sensor box 010 provided in the embodiment is used for fixing the sensor 300, specifically, the sensor box 010 includes a box body 100 and a box cover 200, the box body 100 and the box cover 200 are connected to form a containing cavity, and the sensor 300 is arranged in the containing cavity, wherein one side of the box body 100 facing the box cover 200 is provided with a first support 110, and the first support 110 is provided with a first half hole 120; one side of the box cover 200 facing the box body 100 is provided with a second support 210, and the second support 210 is provided with a second half hole 220, the second half hole 220 is opposite to the first half hole 120, and a clamping hole is formed, the clamping hole is configured to fix the detection probe 310 of the sensor 300.

[0043] When the sensor box 010 is used, the sensor 300 is arranged in the containing cavity formed by the connection of the box body 100 and the box cover 200, and the detection probe 310 of the sensor 300 is fixed in the clamping hole formed by the first half hole 120 and the second half hole 220, wherein the first half hole 120 is formed by the first support 110 arranged on one side of the box body 100 facing the box cover 200, and the second half hole 220 is formed by the second support 210 arranged on one side of the box cover 200 facing the box body 100. That is, the structure for fixing the sensor 300 is divided into two parts, one part is arranged on the box body 100, and the other part is arranged on the box cover 200.

[0044] By the above arrangement, the sensor box 010 can not only realize the effective fixation of the sensor 300 to ensure the reliability of the sensor 300, but also because the two parts of the structure for fixing the sensor 300 are formed on the box body 100 and the box cover 200 respectively, so that the fixation of the sensor 300 is completed after the connection of the box body 100 and the box cover 200, without the need to set a separate fixing support for the sensor 300, thereby reducing the number of parts for fixing the sensor 300, simplifying the number of parts for fixing the sensor 300, reducing the assembly process, improving the assembly efficiency, saving the mold cost, and thus reducing the manufacturing cost of the sensor box 010.

[0045] In addition, the sensor box 010 is arranged in this way, so that the sensor 300 can be positioned by the first half hole 120 or the second half hole 220 during installation of the sensor 300, which makes the installation operation simple and greatly reduces the difficulty of installation.

[0046] In this embodiment, the first support 110 is in an integrated structure with the box body 100, and the first support 110 is formed by a local protrusion from one side of the box body 100 facing the box cover 200; the second support 210 is in an integrated structure with the box cover 200, and the second support 210 is formed by a local protrusion from one side of the box cover 200 facing the box body 100.

[0047] In other embodiments, the first half hole 120 can be directly formed on the box body 100, and the second half hole 220 can be directly formed on the box cover 200.

[0048] In this embodiment, the first half hole 120 and the second half hole 220 are both matched with the detection probe 310. That is, the hole walls of the first half hole 120 and the second half hole 220 are both matched with the outer contour of the detection probe 310.

[0049] In this way, the detection probe 310 can be effectively prevented from shaking in the clamping hole, which on the one hand ensures the reliability of the operation of the sensor 300, and on the other hand reduces the bump damage to the detection probe 310 caused by shaking, thereby protecting the detection probe 310 to a certain extent.

[0050] Please continue to refer to Figure 3 and Figure 5 In this embodiment, the number of the first supports 110 and the number of the second supports 210 are both multiple, and the first half hole 120 arranged on each first support 110 is opposite to the second half hole 220 arranged on each second support 210, thereby forming multiple clamping holes. The number of the clamping holes is the same as the number of the detection probes 310, and the multiple clamping holes are used to one-to-one fix the multiple detection probes 310. That is, each detection probe 310 is fixed by a corresponding group of first supports 110 and second supports 210.

[0051] The fixing of the multiple detection probes 310 of the sensor 300 in this way, since the first support 110 is provided with only one first half hole 120 and the second support 210 is provided with only one second half hole 220, so that there is a cavity region between two adjacent first half holes 120 and a cavity region between two adjacent second half holes 220, on the one hand, reduces the material use of the first support 110 and the second support 210 and lightens the weight of the sensor box 010, on the other hand, also reduces the conduction of force between the multiple first supports 110 and the conduction of force between the multiple second supports 210, weakening the interference on the detection probes 310 in other positions due to the local vibration of the sensor box 010.

[0052] Please continue to refer to Figure 3 and Figure 5 In this embodiment, the first support 110 extends a first set length and the second support 210 extends a second set length along the light emission direction of the detection probe 310. Among them, Figure 3 The dashed arrows S1, S2, S3 and S4 in the figure respectively represent the light emission direction of each detection probe 310. That is, the extension direction of the first support 110 and the extension direction of the second support 210 are both relative to the light emission direction of the detection probe 310 fixed here, and in this embodiment, the light emission direction is different for different detection probes 310.

[0053] By making the first support 110 and the second support 210 both extend a certain length along the light emission direction of the corresponding detection probe 310, the clamping hole becomes a clamping channel, which can increase the cooperation length of the first support 110 and the second support 210 with the detection probe 310, thereby ensuring the stability of the fixation of the detection probe 310.

[0054] Please continue to refer to Figure 3 and Figure 5 In this embodiment, the first support 110 and the second support 210 both extend to the cavity wall 400 of the accommodating cavity along the light emission direction of the detection probe 310.

[0055] In this way, a light emission channel can be formed around the detection probe 310 to guide the light emitted by the detection probe 310, ensuring the closure of the end of the light emission channel, thereby effectively reducing the divergence of light to the surrounding of the light emission channel, reducing light loss, and improving detection accuracy.

[0056] It should be noted that the cavity wall 400 of the accommodating cavity is formed by the front wall of the box body 100, and when the box body 100 is docked with the box cover 200, the front wall of the box body 100 completely blocks the box cover 200, and the light of the detection probe 310 is emitted by the front wall of the box body 100.

[0057] Figure 6 For Figure 5 A local structure enlargement view at A in FIG. 10. Please continue to refer to Figure 5 , and combine Figure 6 In this embodiment, the first support 110 can include a first support plate 111 and a first muscle plate 112. Specifically, the first half hole 120 is opened in the first support plate 111, and the first muscle plate 112 is fixedly connected to the first support plate 111, and the first muscle plate 112 extends a first set length along the light emission direction of the detection probe 310. The first support plate 111 and the first muscle plate 112 are both used to support the detection probe 310. This structural form of the first support 110 can effectively reduce the material use of the first support 110 and reduce the weight of the box body 100, and also facilitate processing and manufacturing.

[0058] Please continue to refer to Figure 6 In this embodiment, the first support 110 can further include two first side baffles 113, both of which are fixedly connected to the first support plate 111 and are separately arranged on both sides of the first muscle plate 112. The two first side baffles 113 extend a first set length along the light emission direction of the detection probe 310. In this way, the structure of the first support 110 can be strengthened to ensure the reliability of the fixation of the detection probe 310.

[0059] Figure 7 For the structural schematic view of the box cover 200 of the sensor box 010 provided in this embodiment, Figure 8 For Figure 7 A local structure enlargement view at B in FIG. 10. Similarly, the second support 210 can include a second support plate 211 and a second muscle plate 212. The second half hole 220 is opened in the second support plate 211, and the second muscle plate 212 is fixedly connected to the second support plate 211, and the second muscle plate 212 extends a second set length along the light emission direction of the detection probe 310. The second support plate 211 and the second muscle plate 212 are both used to support the detection probe 310. This structural form of the second support 210 can effectively reduce the material use of the second support 210 and reduce the weight of the box cover 200, and also facilitate processing and manufacturing.

[0060] Please continue to refer to Figure 8 In this embodiment, the second support 210 can further include two second side baffles 213, both of which are fixedly connected to the second support plate 211 and are separately arranged on both sides of the second muscle plate 212. The two second side baffles 213 extend a second set length along the light emission direction of the detection probe 310. In this way, the structure of the second support 210 can be strengthened to ensure the reliability of the fixation of the detection probe 310.

[0061] In other embodiments, the first support 110 and the second support 210 can also have other structural forms.

[0062] In the embodiment, the first slot can be arranged on the box body 100, and the second slot 230 corresponding to the first slot can be arranged on the box cover 200 (as shown in Figure 7 The circuit board 320 is a PCB (Printed Circuit Board).

[0063] In the embodiment, the box body 100 and the box cover 200 are detachably fixedly connected, and the abutting parts of the two are matched through the installation gap. The installation gap is a, and 0.05mm≤a≤0.15mm. By reserving the installation gap at the abutting parts of the box body 100 and the box cover 200, the connection of the box body 100 and the box cover 200 after abutting can be facilitated.

[0064] Please continue to refer to Figure 5 and Figure 7 In the embodiment, the clamping block 140 can be arranged on the box body 100, and the clamping hole 250 corresponding to the clamping block 140 can be arranged on the box cover 200. The detachable fixed connection of the box body 100 and the box cover 200 can be achieved by the clamping cooperation of the clamping hole 250 and the clamping block 140.

[0065] Please continue to refer to Figure 5 and Figure 7 In the embodiment, the fixing hole 130 can be arranged on the box body 100, and the connecting hole 240 can be arranged on the box cover 200. The fixing hole 130 is a threaded hole, and the connecting hole 240 is a through hole. By using the connecting screw to pass through the connecting hole 240 and be screwed and fixed in the fixing hole 130, the box body 100 and the box cover 200 can be further fixed on the basis of the detachable connection.

[0066] Specifically, in the embodiment, the sensor box 010 formed by the abutting of the box body 100 and the box cover 200 is a long strip structure. One end of the long strip structure is fixedly connected through the clamping structure of the clamping hole 250 and the clamping block 140, and the other end of the long strip structure is fixedly connected through the threaded connection structure of the connecting screw.

[0067] The fixing process of the sensor 300 in the sensor box 010 can be: inserting the circuit board 320 of the sensor 300 into the first slot of the box body 100, and simultaneously accommodating the plurality of detection probes 310 of the sensor 300 in the first half hole 120 of each first support 110; then, the second half hole 220 of the box cover 200 is opposite to the first half hole 120 of the box body 100, the second slot 230 of the box cover 200 is opposite to the other edge of the circuit board 320, and the box cover 200 is pressed to the box body 100, so as to realize the fixing of the sensor 300 in the sensor box 010.

[0068] Although the present application has been disclosed with reference to the above embodiments, the application is not limited to the above embodiments. Various modifications and changes can be made by those skilled in the art without departing from the spirit and scope of the application. Therefore, the scope of the present application should be defined by the appended claims.

[0069] Finally, it should be noted that the terms "first", "second", and the like, herein do not denote any order, quantity, combination, or importance, but rather are used to distinguish one element from another, and are not necessarily intended to denote the physical or chronological order of such elements. Also, the term "comprises" or its any other variant is intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can also include other elements not expressly listed or inherent to such process, method, article, or apparatus. An element proceeded by "comprises a" does not, without more constraints, foreclose the existence of additional identical elements in the process, method, article, or apparatus that comprises the identified element.

[0070] In the above embodiments, the orientation terms such as "upper", "lower", "side", etc. are based on the figures shown.

[0071] The above description of disclosed embodiments is intended to be illustrative, and not restrictive. Many modifications and variations of the described embodiments will be apparent to those skilled in the art from this disclosure. Thus, it is intended that the scope of the application should be defined by the appended claims and their equivalents.

Claims

1. A sensor cartridge, characterized by, The utility model provides a sensor (300) fixing device, which comprises a box body (100) and a box cover (200), the box body (100) and the box cover (200) are connected to form a containing cavity, and the sensor (300) is arranged in the containing cavity, wherein one side of the box body (100) towards the box cover (200) is provided with a first half hole (120), one side of the box cover (200) towards the box body (100) is provided with a second half hole (220), the second half hole (220) is opposite to the first half hole (120), and a clamping hole is formed, and the clamping hole is configured to fix a detection probe (310) of the sensor (300). One side of the box body (100) towards the box cover (200) is provided with a first support (110), and the first half hole (120) is arranged in the first support (110); one side of the box cover (200) towards the box body (100) is provided with a second support (210), and the second half hole (220) is arranged in the second support (210); along the light emission direction of the detection probe (310), the first support (110) and the second support (210) extend to the cavity wall (400) of the containing cavity, the cavity wall (400) is formed by the front wall of the box body (100), and when the box body (100) and the box cover (200) are connected, the front wall of the box body (100) completely blocks the box cover (200), and the light of the detection probe (310) is emitted from the front wall of the box body (100).

2. The sensor cartridge of claim 1, wherein, The first half hole (120) and the second half hole (220) are matched with the detection probe (310).

3. The sensor cartridge of claim 1, wherein, The number of the first half hole (120) and the number of the second half hole (220) are both multiple, multiple first half holes (120) are respectively opposite to multiple second half holes (220), multiple clamping holes are formed, the number of the clamping holes is the same as the number of the detection probe (310), and multiple clamping holes are used to one-to-one fix multiple detection probes (310).

4. The sensor cartridge of claim 1, wherein, Along the light emission direction of the detection probe (310), the first half hole (120) extends a first set length, and the second half hole (220) extends a second set length.

5. The sensor cartridge of claim 4, wherein, The first support (110) comprises a first support plate (111) and a first rib plate (112), the first half hole (120) is arranged in the first support plate (111), the first rib plate (112) is fixedly connected to the first support plate (111), and the first rib plate (112) extends along the light emission direction of the detection probe (310) by the first set length, and the first support plate (111) and the first rib plate (112) are both used for supporting the detection probe (310); and / or the second support (210) comprises a second support plate (211) and a second rib plate (212), a second half hole (220) is arranged in the second support plate (211), the second rib plate (212) is fixedly connected to the second support plate (211), and the second rib plate (212) extends along the light emission direction of the detection probe (310) by the second set length, and the second support plate (211) and the second rib plate (212) are both used for supporting the detection probe (310).

6. The sensor cartridge of claim 5, wherein, The first support (110) further comprises two first side baffles (113), the two first side baffles (113) are both fixedly connected to the first support plate (111) and are arranged on the two sides of the first rib plate (112), and the two first side baffles (113) extend along the light emission direction of the detection probe (310) by the first set length; and / or the second support (210) further comprises two second side baffles (213), the two second side baffles (213) are both fixedly connected to the second support plate (211) and are arranged on the two sides of the second rib plate (212), and the two second side baffles (213) extend along the light emission direction of the detection probe (310) by the second set length.

7. The sensor cartridge of any one of claims 1-4, wherein, The box body (100) and the box cover (200) are detachably fixedly connected, and the abutting parts of the two are matched through an installation gap, the installation gap is a, 0.05mm≤a≤0.15mm.

8. An air conditioner cabinet machine, characterized in that, The air conditioner comprises an air outlet frame (020), a sensor (300) and the sensor box of any one of claims 1-7, the sensor box is installed in the air outlet frame (020), the sensor (300) is arranged in the accommodating cavity formed by the sensor box, and the detection probe (310) of the sensor (300) is fixed in the clamping hole of the accommodating cavity.

9. The cabinet air conditioner according to claim 8, wherein The air conditioner is a sectional air outlet air conditioner, and the air conditioner comprises a plurality of sections of sweeping blades (050) arranged at intervals along the height direction of the air conditioner, and the sensor box is arranged between any two adjacent sections of the sweeping blades (050).

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